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Anomalous mole-fraction effects in recombinant and native cyclic nucleotide-gated channels in rat olfactory receptor neurons.

机译:大鼠嗅觉受体神经元中重组和天然环状核苷酸门控通道中的异常摩尔分数效应。

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摘要

Anomalous mole-fraction effects (AMFE) were studied, using the inside-out configuration of the patchclamp technique, in both recombinant wild-type alpha-homomeric rat olfactory adenosine 3',5'-cyclic monophosphate (cAMP)-gated channels (rOCNC1) expressed in human embryonic kidney cells (HEK 293) and native cyclic nucleotide-gated (CNG) channels in acutely isolated rat olfactory receptor neurons. Single-channel and macroscopic currents were activated by 200 microM and 500 microM cAMP, respectively. Macroscopic currents, measured with mixtures of Na(+)-NH(4)(+) or Cs(+)-Li(+) in the cytoplasmic bathing solution, displayed AMFE in the rOCNC1 channels at both positive and negative membrane potentials. The rOCNC1 single-channel conductance showed a distinct minimum (or maximum) in an 80% Na(+)-20% NH(4)(+) mixture (or a 60% Cs(+)-40% Li(+) mixture), but only at positive membrane potentials. Macroscopic measurements in native olfactory CNG channels with mixtures of Na(+)-NH(4)(+) indicated similar AMFE. These results suggest that both native CNG channels and recombinant alpha-homomeric channels allow several ions to be present simultaneously within the channel pore. They also further validate the dominant role of the alpha-subunit in permeation through these channels, provide the first evidence to suggest that rOCNC1 channels have multi-ion properties and further justify the use of the rOCNC1 channel as an effective model for structure-function studies of ion permeation and selectivity in olfactory CNG channels.
机译:使用膜片钳技术的内外构型,研究了重组野生型α-同源大鼠嗅觉腺苷3',5'-环一磷酸(cAMP)门控通道(rOCNC1)中的异常摩尔分数效应(AMFE)在人类胚胎肾细胞(HEK 293)和天然环状核苷酸门控(CNG)通道中,在急性分离的大鼠嗅觉受体神经元中表达。单通道电流和宏观电流分别由200 microM和500 microM cAMP激活。宏观电流,用Na(+)-NH(4)(+)或Cs(+)-Li(+)在细胞质沐浴液中的混合物测量,在rOCNC1通道中显示正膜电位和负膜电位。 rOCNC1单通道电导在80%Na(+)-20%NH(4)(+)混合物(或60%Cs(+)-40%Li(+)混合物中显示出明显的最小值(或最大值) ),但仅在膜电位为正时。 Na(+)-NH(4)(+)的混合物的天然嗅觉CNG通道中的宏观测量表明相似的AMFE。这些结果表明,天然CNG通道和重组α-同源通道都允许几种离子同时存在于通道孔中。他们还进一步验证了α-亚基在通过这些通道的渗透中的主导作用,提供了第一个证据表明rOCNC1通道具有多离子特性,并进一步证明了将rOCNC1通道用作结构功能研究的有效模型的合理性。 CNG通道中离子渗透和选择性的关系

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